首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Kinetics of photo-induced electron transfer from high-potential iron-sulfur protein to the photosynthetic reaction center of the purple phototroph Rhodoferax fermentans.
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Kinetics of photo-induced electron transfer from high-potential iron-sulfur protein to the photosynthetic reaction center of the purple phototroph Rhodoferax fermentans.

机译:从高电位铁硫蛋白到紫色光养菌Rhodoferx fermentans光合反应中心的光诱导电子转移的动力学。

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摘要

The kinetics of photo-induced electrontransfer from high-potential iron-sulfur protein (HiPIP) to the photosynthetic reaction center (RC) of the purple phototroph Rhodoferarfermentans were studied. The rapid photooxidation of heme c-556 belonging to RC is followed, in the presence of HiPIP, by a slower reduction having a second-order rate constant of 4.8 x 10(7) M(-1) x s(-1). The limiting value of kobs at high HiPIP concentration is 95 s(-1). The amplitude of this slow process decreases with increasing HiPIP concentration. The amplitude of a faster phase, observed at 556 and 425 nm and involving heme c-556 reduction, increases proportionately. The rate constant of this fast phase, determined at 425 and 556 nm, is approximately 3 x 10(5) s(-1). This value is not dependent on HiPIP concentration, indicating that it is related to a first-order process. These observations are interpreted as evidence for the formation of a HiPIP-RC complex prior to the excitation flash, having a dissociation constant of -2.5 microM. The fast phase is absent at high ionic strength, indicating that the complex involves mainly electrostatic interactions. The ionic strength dependence of kobs for the slow phase yields a second-order rate constant at infinite ionic strength of 5.4 x 10(6) M(-1) x s(-1) and an electrostatic interaction energy of -2.1 kcal/mol (1 cal = 4.184 J). We conclude that Rhodoferar fermentans HiPIP is a very effective electron donor to the photosynthetic RC.
机译:研究了从高电位铁硫蛋白(HiPIP)到紫色光养细菌Rhodoferarfermentans的光合反应中心(RC)的光诱导电子转移的动力学。在HiPIP存在的情况下,属于RC的血红素c-556的快速光氧化作用是通过较慢的还原进行的,该还原具有4.8 x 10(7)M(-1)x s(-1)的二级速率常数。高HiPIP浓度下的穗轴极限值为95 s(-1)。随着HiPIP浓度的增加,该缓慢过程的幅度减小。在556和425 nm处观察到并涉及血红素c-556还原的较快相的振幅成比例地增加。该快速相的速率常数在425和556 nm处确定,约为3 x 10(5)s(-1)。该值不依赖于HiPIP浓度,表明它与一阶过程有关。这些观察结果被解释为在激发闪光之前形成HiPIP-RC复合物的证据,其解离常数为-2.5 microM。高离子强度不存在快速相,表明该络合物主要涉及静电相互作用。慢速轴的离子强度依赖离子在5.4 x 10(6)M(-1)xs(-1)的无限离子强度和-2.1 kcal / mol的静电相互作用能下产生二级速率常数1校准= 4.184 J)。我们得出结论,杜鹃花发酵罐HiPIP是光合作用RC的非常有效的电子供体。

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